2018
DOI: 10.1109/tie.2017.2696492
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Analysis of a Novel Double-Sided Yokeless Multitooth Linear Switched-Flux PM Motor

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Cited by 65 publications
(17 citation statements)
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“…To enhance machine's overall performance that includes increase of three-phase no-load and on-load flux linkage, average thrust force, and thrust force density due to AC winding current density and PM volume; and decrease of thrust force ripple ratio, the SBDO approach [13,22,23] is applied. Electrical loading, magnetic loading, armature coil slot area, stator pole pitch, mover pole pitch, stack length, and air-gap length are kept constant during the optimisation process.…”
Section: Structure-based Deterministic Optimisation Of 12/1dmlpmfsmmentioning
confidence: 99%
“…To enhance machine's overall performance that includes increase of three-phase no-load and on-load flux linkage, average thrust force, and thrust force density due to AC winding current density and PM volume; and decrease of thrust force ripple ratio, the SBDO approach [13,22,23] is applied. Electrical loading, magnetic loading, armature coil slot area, stator pole pitch, mover pole pitch, stack length, and air-gap length are kept constant during the optimisation process.…”
Section: Structure-based Deterministic Optimisation Of 12/1dmlpmfsmmentioning
confidence: 99%
“…The SVGO technique, also known as deterministic optimization [25,28,33], is applied to increase the average thrust force and decrease peak-to-peak detent force, thrust force ripples, no-load flux linkage THD, and thrust force ripple ratio of DSLFSPMM-M3. Increase of average thrust force is set as a priority for the selection of machine configuration.…”
Section: Single Variable Geometric Optimization (Svgo) Of Dslfspmm-m3mentioning
confidence: 99%
“…Comparison of double stator and double mover LFSM is performed in [24] and the authors claim an advantage of a low thrust force ratio for the DSLFSM structure with moving primary (mover). Analysis and design of a LFSPMM with a yokeless double stator conventional topology is presented in [25,26] and one with multitooth topology is presented in [27,28]. On the other hand, the multi-tooth configuration would result in more severe magnetic leakage on the mover pole, which could easily saturate the mover iron teeth even with a light electric load.…”
Section: Introductionmentioning
confidence: 99%
“…This type of LSMs can adopt single-sided, double-sided with yoke, yokeless double-sided format, etc. [13]. In order to overcome the high temperature rise of PMs which is caused by direct contact between PMs and armature windings, the structure of FSLMs can be further improved by separating the primary into two parts, which is called primary-partitioned FSLM (PPFSLM).…”
Section: B Linear Flux-switching Machinesmentioning
confidence: 99%